Given: You wish to design a band-reject filter using the bilinear transformation method. Your prototype normalized low-pass filter's analog transfer function is given below: 1 H(s) = s2 + V2s +1 The filter should have a stopband between 450 and 550 Hz, and the signal will be sampled at F; = 7.5 kHz. Find: Design a digital filter that meets the above requirements. Determine H(z) for the filter. Plot the filter's magnitude and phase response. Determine the implementation equation for y[n]. Finally, assume the below signal is sampled at the given sampling frequency and is input into the digital filter. x(t) = cos(2n100t) + cos(27500f) + cos(2n1.000t)
Given: You wish to design a band-reject filter using the bilinear transformation method. Your prototype normalized low-pass filter's analog transfer function is given below: 1 H(s) = s2 + V2s +1 The filter should have a stopband between 450 and 550 Hz, and the signal will be sampled at F; = 7.5 kHz. Find: Design a digital filter that meets the above requirements. Determine H(z) for the filter. Plot the filter's magnitude and phase response. Determine the implementation equation for y[n]. Finally, assume the below signal is sampled at the given sampling frequency and is input into the digital filter. x(t) = cos(2n100t) + cos(27500f) + cos(2n1.000t)
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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![Given: You wish to design a band-reject filter using the bilinear transformation method.
Your prototype normalized low-pass filter's analog transfer function is given below:
1
H(s) =
s2 + V2s +1
The filter should have a stopband between 450 and 550 Hz, and the signal will be sampled at F,
= 7.5 kHz.
Find: Design a digital filter that meets the above requirements. Determine H(z) for the filter.
Plot the filter's magnitude and phase response. Determine the implementation equation for y[n].
Finally, assume the below signal is sampled at the given sampling frequency and is input into
the digital filter.
x(t) = cos(27100£) + cos(27500f) + cos(271,000f)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F30845db3-2750-49e7-aca5-9764b0b9532e%2Fc956cae9-b5b5-4172-b129-7a5201dca99d%2Fjp9s79p_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Given: You wish to design a band-reject filter using the bilinear transformation method.
Your prototype normalized low-pass filter's analog transfer function is given below:
1
H(s) =
s2 + V2s +1
The filter should have a stopband between 450 and 550 Hz, and the signal will be sampled at F,
= 7.5 kHz.
Find: Design a digital filter that meets the above requirements. Determine H(z) for the filter.
Plot the filter's magnitude and phase response. Determine the implementation equation for y[n].
Finally, assume the below signal is sampled at the given sampling frequency and is input into
the digital filter.
x(t) = cos(27100£) + cos(27500f) + cos(271,000f)
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